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Cellular and Molecular Life Sciences : CMLS|October 12, 2012
Reactivation of the inactive X chromosome in development and reprogrammingTatsuya Ohhata, Anton WutzCurrent Drug Targets|September 15, 2012
Long non-coding RNAs involved in cancer development and cell fate determinationMasatoshi Kitagawa, Yojiro Kotake, Tatsuya OhhataDevelopment (Cambridge, England)|December 7, 2007
Crucial role of antisense transcription across the Xist promoter in Tsix-mediated Xist chromatin modificationTatsuya Ohhata, Yuko Hoki, Hiroyuki Sasaki, et al.Genes & Development|August 20, 2011
Lineage-specific function of the noncoding Tsix RNA for Xist repression and Xi reactivation in miceTatsuya Ohhata, Claire E Senner, Myriam Hemberger, et al.Advances in Experimental Medicine and Biology|July 15, 2026
Gonocytes in Transition: Establishing the Male Germline IdentityPeilin Li, Tatsuya Ohhata, Satoshi Sakai, et al.Cellular and Molecular Life Sciences : CMLS|July 25, 2013
Cell cycle regulation by long non-coding RNAsMasatoshi Kitagawa, Kyoko Kitagawa, Yojiro Kotake, et al.Experimental Animals|June 17, 2003
Evaluation of developmental competence of vitrified-warmed early cleavage stage embryos and their application for chimeric mouse productionSeiji Kito, Yoshiko Noguchi, Yuki Ohta, et al.Carcinogenesis|November 6, 2022
APOBEC3B expression is promoted by lincNMR collaborating with TGF-β-Smad pathwayKosuke Ota, Satoshi Sakai, Tatsuya Ohhata, et al.Genesis (New York, N.Y. : 2000)|October 20, 2004
X-inactivation is stably maintained in mouse embryos deficient for histone methyl transferase G9aTatsuya Ohhata, Makoto Tachibana, Masako Tada, et al.Development (Cambridge, England)|November 28, 2008
A proximal conserved repeat in the Xist gene is essential as a genomic element for X-inactivation in mouseYuko Hoki, Naomi Kimura, Minako Kanbayashi, et al.Pageof 4